> we found that up to 99.1% of the microbes in sediment deposited 101.5 million years ago were still alive and were ready to eat > But the real secret of their remarkable survival lies in their metabolic rate. It is just slow enough for them to survive for such long periods. That would imply their metabolic rate to be practically zero, 101 million years is such a long time that even the tiniest amount of activity wou…
> were ready to eat Am I the only one who pictured the lab workers munching on 100M year old microbe colonies?
Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
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Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#52How about Asia chills out playing with diseases for a little while
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#53> we found that up to 99.1% of the microbes in sediment deposited 101.5 million years ago were still alive and were ready to eat > But the real secret of their remarkable survival lies in their metabolic rate. It is just slow enough for them to survive for such long periods. That would imply their metabolic rate to be practically zero, 101 million years is such a long time that even the tiniest amount of activity wou…
I wondered that too. "Die" implies not just metabolic rate going to zero, but also cells "disassembling" too ("decomposing" feels a bit large-scale in this context). It did say that there were microscopic amounts of oxygen in the sediment. Presumably, that was enough to maintain a minimally-small MR.
-- D’Hondt, S. et al. Presence of oxygen and aerobic communities from sea floor to basement in deep-sea sediments. Nature Geosci. 8, 299–304 (2015).
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#54Are the microbes themselves that old, or simply made of old material? Edit: quoting the article, it doesn't say the microbes themselves are 100M years old, only that they're in sediment which is that old. Big difference! "99.1% of the microbes in sediment deposited 101.5 million years ago were still alive and were ready to eat"
> Very low permeability (1.1–2.0 × 10−17 m2 for IODP Site U1365 4H-3 [26.6 meters below seafloor (mbsf)] and 8.9 × 10−18 m2 for IODP Site U1370 [37.5 mbsf], respectively), very low estimated pore size of the abyssal clay (~0.02 microns, calculated using above permeability data according to the equation shown in Tanikawa et al.), and thick porcellanite layers above the oldest sampled horizons appear to preclude cell migration into the sampled sediment. Consequently, the sampled communities have likely been trapped in the sediment since shortly after its deposition.
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#55Don't know why anyone would post a medium blog post. Seriously. https://archive.is/2h7Nf
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#56I wonder if they could similarly survive on, say, comets or asteroids.
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#57> we found that up to 99.1% of the microbes in sediment deposited 101.5 million years ago were still alive and were ready to eat > But the real secret of their remarkable survival lies in their metabolic rate. It is just slow enough for them to survive for such long periods. That would imply their metabolic rate to be practically zero, 101 million years is such a long time that even the tiniest amount of activity wou…
And DNA appears to have a half-life of 521 years. 101 million years is 194 817 half-lifes. Assuming the research is sound I wonder how the bacteria get around that limit.
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#58> we found that up to 99.1% of the microbes in sediment deposited 101.5 million years ago were still alive and were ready to eat > But the real secret of their remarkable survival lies in their metabolic rate. It is just slow enough for them to survive for such long periods. That would imply their metabolic rate to be practically zero, 101 million years is such a long time that even the tiniest amount of activity wou…
And DNA appears to have a half-life of 521 years. 101 million years is 194 817 half-lifes. Assuming the research is sound I wonder how the bacteria get around that limit.
DNA stabilizing:
Much lower T (below 0C) Practically no radiation (an ocean above you blocking it all)
DNA de-stabilizing: Corrosive chemicals spewing from a nearby volcano (but only if one is near you!) Radiation from said volcano and rocks (but they'd have to be closer still, due to shielding from the water)
So unless the 500 year half life is the "self-damaging" rate, I'd expect DNA at the bottom to last much longer.
Re: Living microbes, possibly 100M years old, pulled from beneath the sea (2020)
#59> we found that up to 99.1% of the microbes in sediment deposited 101.5 million years ago were still alive and were ready to eat > But the real secret of their remarkable survival lies in their metabolic rate. It is just slow enough for them to survive for such long periods. That would imply their metabolic rate to be practically zero, 101 million years is such a long time that even the tiniest amount of activity wou…
And DNA appears to have a half-life of 521 years. 101 million years is 194 817 half-lifes. Assuming the research is sound I wonder how the bacteria get around that limit.
Or in laymens words: the half-life of a DNA molecule per nucleotide depends on the environment and is in the order of magnitude around 1 million years. Else, we would not have any ancient genomes by now.